US10400002B2 - Iridium complex and organic electroluminescence device using the same - Google Patents
Iridium complex and organic electroluminescence device using the same Download PDFInfo
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- US10400002B2 US10400002B2 US15/721,965 US201715721965A US10400002B2 US 10400002 B2 US10400002 B2 US 10400002B2 US 201715721965 A US201715721965 A US 201715721965A US 10400002 B2 US10400002 B2 US 10400002B2
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- organic electroluminescence
- iridium complex
- electroluminescence device
- organic
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- HQRKOKKYZLTSQC-OJOPDJOJSA-J CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=C5C=CN=CC5=C1)N34)C1=N2C=CC2=C1C=CC=C2 Chemical compound CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=C5C=CN=CC5=C1)N34)C1=N2C=CC2=C1C=CC=C2 HQRKOKKYZLTSQC-OJOPDJOJSA-J 0.000 description 2
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- LBYKEUOZAQABPF-PWKQJTHVSA-J CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 LBYKEUOZAQABPF-PWKQJTHVSA-J 0.000 description 2
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- LRZQFUVZPJRLKQ-OJOPDJOJSA-J CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CC=C4)C1=C(S3)C2=N(C=CC3=C2CCCC3)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CC=C4)C1=C(S3)C2=N(C=CC=C2)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2 Chemical compound CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=C5C=CC=CC5=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CC=C4)C1=C(S3)C2=N(C=CC3=C2CCCC3)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CC=C4)C1=C(S3)C2=N(C=CC=C2)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2 LRZQFUVZPJRLKQ-OJOPDJOJSA-J 0.000 description 2
- YSIIENWIRDZURC-OJOPDJOJSA-J CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 YSIIENWIRDZURC-OJOPDJOJSA-J 0.000 description 2
- VJIQBQOASRDXRK-OJOPDJOJSA-J CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 VJIQBQOASRDXRK-OJOPDJOJSA-J 0.000 description 2
- WQMIBIXJOLRXPZ-OTQGVBLJSA-J CC(C)(C)C1=CC2=C(C=C1)C1=N(C=C2)[Ir]2(OC(C(C)(C)C)=CC(C(C)(C)C)=O2)C2=C1SC1=C2C2=C3C(=CC=C2)C2=C(C=CC=C2)N13.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC5=C1C=CC=C5)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1C)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC2=C3C(=C1)C1=C(C=CC=C1)N3C1=C2C2=C(S1)C1=N(C=CC=C1)[Ir]21OC(C)=CC(C)=O1 Chemical compound CC(C)(C)C1=CC2=C(C=C1)C1=N(C=C2)[Ir]2(OC(C(C)(C)C)=CC(C(C)(C)C)=O2)C2=C1SC1=C2C2=C3C(=CC=C2)C2=C(C=CC=C2)N13.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC5=C1C=CC=C5)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1C)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC2=C3C(=C1)C1=C(C=CC=C1)N3C1=C2C2=C(S1)C1=N(C=CC=C1)[Ir]21OC(C)=CC(C)=O1 WQMIBIXJOLRXPZ-OTQGVBLJSA-J 0.000 description 2
- YPDQNLPVISDYEP-OJOPDJOJSA-J CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CN=C4)C1=C(S3)C2=N(C=CC3=C2C=CC=C3)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CN=C4)C1=C(S3)C2=N(C=CC=C2)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=NC=C4)C1=C(S3)C2=N(C=CC3=C2CCCC3)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=NC=C4)C1=C(S3)C2=N(C=CC=C2)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2 Chemical compound CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CN=C4)C1=C(S3)C2=N(C=CC3=C2C=CC=C3)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=CN=C4)C1=C(S3)C2=N(C=CC=C2)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=NC=C4)C1=C(S3)C2=N(C=CC3=C2CCCC3)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2.CC(C)(C)C1=CC2=C(C=C1)N1C3=C(C4=C1C2=NC=C4)C1=C(S3)C2=N(C=CC=C2)[Ir]12OC(C(C)(C)C)=CC(C(C)(C)C)=O2 YPDQNLPVISDYEP-OJOPDJOJSA-J 0.000 description 2
- XMMPULHXALPNDN-QBEUYUSQSA-J CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2)C(C)C.CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1)C(C)C.CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2)C(C)C.CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2)C(C)C Chemical compound CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2)C(C)C.CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1)C(C)C.CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2)C(C)C.CC(C)C(C1=CC(C(C(C)C)C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2)C(C)C XMMPULHXALPNDN-QBEUYUSQSA-J 0.000 description 2
- RWNKEFLJHLHOLE-WFVBHKTLSA-J CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 RWNKEFLJHLHOLE-WFVBHKTLSA-J 0.000 description 2
- BFJBGONXIGCVBO-WFVBHKTLSA-J CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 BFJBGONXIGCVBO-WFVBHKTLSA-J 0.000 description 2
- QUPJXIONJUVZCT-RPEPEJCZSA-J CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 QUPJXIONJUVZCT-RPEPEJCZSA-J 0.000 description 2
- UBGPWJBKMQZJPE-WFVBHKTLSA-J CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2 Chemical compound CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2 UBGPWJBKMQZJPE-WFVBHKTLSA-J 0.000 description 2
- DLRNSPIKMSNLOO-RPEPEJCZSA-J CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2 Chemical compound CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2 DLRNSPIKMSNLOO-RPEPEJCZSA-J 0.000 description 2
- YDEVDGRTNVQMIQ-WFVBHKTLSA-J CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 YDEVDGRTNVQMIQ-WFVBHKTLSA-J 0.000 description 2
- ANUOFGXQUQSMKZ-WFVBHKTLSA-J CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)C1=CC(C(C)C)=O[Ir]2(O1)C1=C([Se]C3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 ANUOFGXQUQSMKZ-WFVBHKTLSA-J 0.000 description 2
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- LKXFEZYQDRZZLV-IWOQRIGNSA-J CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC2=C3C=CC=C2)C(C)(C)C2=C1C1=C3C(=CN=C1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)C(C2=CC=CC=C2)(C2=CC=CC=C2)C2=C1C1=C3C(=CC=N1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)N(C2=CC=CC=C2)C2=C1C1=C3C(=CC=C1)C1=C(C=CC=C1)N32.CC1=CC=C(C2(C3=CC=C(C)C=C3)C3=C(C4=C2N2C5=C(C=CC=C5)C5=CN=CC4=C52)[Ir]2(OC(C)=CC(C)=O2)N2=C3C=CC=C2)C=C1 Chemical compound CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC2=C3C=CC=C2)C(C)(C)C2=C1C1=C3C(=CN=C1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)C(C2=CC=CC=C2)(C2=CC=CC=C2)C2=C1C1=C3C(=CC=N1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)N(C2=CC=CC=C2)C2=C1C1=C3C(=CC=C1)C1=C(C=CC=C1)N32.CC1=CC=C(C2(C3=CC=C(C)C=C3)C3=C(C4=C2N2C5=C(C=CC=C5)C5=CN=CC4=C52)[Ir]2(OC(C)=CC(C)=O2)N2=C3C=CC=C2)C=C1 LKXFEZYQDRZZLV-IWOQRIGNSA-J 0.000 description 2
- LDLGMCMCDXGFDK-IWOQRIGNSA-J CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC2=C3C=CC=C2)N(C2=CN=CC=C2)C2=C1C1=C3C(=CC=C1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)N(C2=CC=CC=C2)C2=C1C1=C3C(=NC=C1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(NC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(N2C3=C(C4=C2N2C5=C(C=CC=C5)C5=CN=CC4=C52)[Ir]2(OC(C)=CC(C)=O2)N2=C3C=CC=C2)=CC=C1 Chemical compound CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC2=C3C=CC=C2)N(C2=CN=CC=C2)C2=C1C1=C3C(=CC=C1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)N(C2=CC=CC=C2)C2=C1C1=C3C(=NC=C1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(NC3=C1C1=C4C(=NC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(N2C3=C(C4=C2N2C5=C(C=CC=C5)C5=CN=CC4=C52)[Ir]2(OC(C)=CC(C)=O2)N2=C3C=CC=C2)=CC=C1 LDLGMCMCDXGFDK-IWOQRIGNSA-J 0.000 description 2
- XPIBRPFJIZVNLB-IWOQRIGNSA-J CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)N(C2CCCCC2)C2=C1C1=C3C(=CC=N1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC(C(C)(C)C)=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC5=C1C=CN=C5)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC2=C3C(=C1)C1=C(C=CC=C1)N3C1=C2C2=C(S1)C1=N(C=CC3=C1C=CC=C3)[Ir]21OC(C)=CC(C)=O1 Chemical compound CC1=CC(C)=O[Ir]2(O1)C1=C(C3=N2C=CC=C3)N(C2CCCCC2)C2=C1C1=C3C(=CC=N1)C1=C(C=CC=C1)N32.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC(C(C)(C)C)=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC5=C1C=CN=C5)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC2=C3C(=C1)C1=C(C=CC=C1)N3C1=C2C2=C(S1)C1=N(C=CC3=C1C=CC=C3)[Ir]21OC(C)=CC(C)=O1 XPIBRPFJIZVNLB-IWOQRIGNSA-J 0.000 description 2
- BSYMCRXVUMMXGA-IWOQRIGNSA-J CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CC=N1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC1=CC(C)=O[Ir]2(O1)C1=C(OC3=C1C1=C4C(=CN=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 BSYMCRXVUMMXGA-IWOQRIGNSA-J 0.000 description 2
- WDWWFYXXUIKSOW-PXSFCGFJSA-L CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC5=C1CCCC5)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC2=C(C=C1)C1=C3C(=C2)C2=C(C=CC=C2)N3C2=C1C1=C(S2)C2=N(C=CC=C2)[Ir]12OC(C)=CC(C)=O2 Chemical compound CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC5=C1CCCC5)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC2=C(C=C1)C1=C3C(=C2)C2=C(C=CC=C2)N3C2=C1C1=C(S2)C2=N(C=CC=C2)[Ir]12OC(C)=CC(C)=O2 WDWWFYXXUIKSOW-PXSFCGFJSA-L 0.000 description 2
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- GIQDCSZDVBSMEL-CLTICETKSA-M C.C1=CC=N2C(=C1)C1=C(C3=C(S1)N1C4=C(C=CC=C4)/C4=C/C=C\C3=C41)[Ir]21Cl[Ir]2(Cl1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)(C)C(=O)CC(=O)C(C)(C)C.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound C.C1=CC=N2C(=C1)C1=C(C3=C(S1)N1C4=C(C=CC=C4)/C4=C/C=C\C3=C41)[Ir]21Cl[Ir]2(Cl1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC(C)(C)C(=O)CC(=O)C(C)(C)C.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 GIQDCSZDVBSMEL-CLTICETKSA-M 0.000 description 1
- AYSVZUOJJVATJM-GZAZYVOSSA-M C.C1=CC=N2C(=C1)C1=C(C3=C(S1)N1C4=C(C=CC=C4)/C4=C/C=C\C3=C41)[Ir]21Cl[Ir]2(Cl1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CCC(CC)C(=O)CC(=O)C(CC)CC.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound C.C1=CC=N2C(=C1)C1=C(C3=C(S1)N1C4=C(C=CC=C4)/C4=C/C=C\C3=C41)[Ir]21Cl[Ir]2(Cl1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CCC(CC)C(=O)CC(=O)C(CC)CC.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4C(=CC=C1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 AYSVZUOJJVATJM-GZAZYVOSSA-M 0.000 description 1
- YZMHIVBUFHAJIY-BADIPDRBSA-K C1=CC=C(C2=CC(C3=CC=CC=C3)=O[Ir]3(O2)C2=C(SC4=C2C2=C5/C(=C\C=C/2)C2=C(C=CC=C2)N45)C2=N3C=CC3=C2C=CC=C3)C=C1.C1=CC=C(C2=CC(C3=CC=CC=C3)=O[Ir]3(O2)C2=C(SC4=C2C2=C5/C(=C\C=C/2)C2=C(C=CC=C2)N45)C2=N3C=CC=C2)C=C1.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2 Chemical compound C1=CC=C(C2=CC(C3=CC=CC=C3)=O[Ir]3(O2)C2=C(SC4=C2C2=C5/C(=C\C=C/2)C2=C(C=CC=C2)N45)C2=N3C=CC3=C2C=CC=C3)C=C1.C1=CC=C(C2=CC(C3=CC=CC=C3)=O[Ir]3(O2)C2=C(SC4=C2C2=C5/C(=C\C=C/2)C2=C(C=CC=C2)N45)C2=N3C=CC=C2)C=C1.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2 YZMHIVBUFHAJIY-BADIPDRBSA-K 0.000 description 1
- GMVGQGCKJYCRDJ-QLZYARJLSA-J CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 Chemical compound CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CC(C)(C)C1=CC(C(C)(C)C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC2=C1C=CC=C2.CCC(CC)C1=CC(C(CC)CC)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1 GMVGQGCKJYCRDJ-QLZYARJLSA-J 0.000 description 1
- UQBSSXSNPZARPW-PERDGSGESA-L CC1(C)C2=CC3=C(C=C2C2=C1C=C(C1=NC(C4=CC(C5=CC=CC=C5)=CC(C5=CC=CC=C5)=C4)=NC(C4=CC(C5=CC=CC=C5)=CC(C5=CC=CC=C5)=C4)=N1)C=C2)C1=C(C=CC=C1)C1=C3C=CC=C1.CC1(C)C2=CC3=C4C=CC=CC4=C4C=CC=CC4=C3C=C2C2=C1/C=C(C1=NC(C3=CC=CC=C3)=NC(C3=CC=CC=C3)=N1)\C=C/2.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.[Li]1OC2=CC=CC3=C2N1=CC=C3.[Li]C Chemical compound CC1(C)C2=CC3=C(C=C2C2=C1C=C(C1=NC(C4=CC(C5=CC=CC=C5)=CC(C5=CC=CC=C5)=C4)=NC(C4=CC(C5=CC=CC=C5)=CC(C5=CC=CC=C5)=C4)=N1)C=C2)C1=C(C=CC=C1)C1=C3C=CC=C1.CC1(C)C2=CC3=C4C=CC=CC4=C4C=CC=CC4=C3C=C2C2=C1/C=C(C1=NC(C3=CC=CC=C3)=NC(C3=CC=CC=C3)=N1)\C=C/2.CC1=CC(C)=O[Ir]2(O1)C1=C(SC3=C1C1=C4/C(=C\C=C/1)C1=C(C=CC=C1)N34)C1=N2C=CC=C1.[Li]1OC2=CC=CC3=C2N1=CC=C3.[Li]C UQBSSXSNPZARPW-PERDGSGESA-L 0.000 description 1
- IVVFJLBVVXZTKP-PXSFCGFJSA-L CC1=CC(C)=O[Ir]2(O1)C1=CC=CC=C1C1=N2C2=C(C=CC=C2)C=C1.CC1=CC(C)=O[Ir]2(O1)C1=CC=CC=C1C1=N2C=CC2=C1C=CC=C2 Chemical compound CC1=CC(C)=O[Ir]2(O1)C1=CC=CC=C1C1=N2C2=C(C=CC=C2)C=C1.CC1=CC(C)=O[Ir]2(O1)C1=CC=CC=C1C1=N2C=CC2=C1C=CC=C2 IVVFJLBVVXZTKP-PXSFCGFJSA-L 0.000 description 1
- MMORTBPJWRRTSZ-UHFFFAOYSA-N O=[N+]([O-])C1=CC=CC=C1Br.O=[N+]([O-])C1=CC=CC=C1C1=CSC=C1.OB(O)C1=CSC=C1 Chemical compound O=[N+]([O-])C1=CC=CC=C1Br.O=[N+]([O-])C1=CC=CC=C1C1=CSC=C1.OB(O)C1=CSC=C1 MMORTBPJWRRTSZ-UHFFFAOYSA-N 0.000 description 1
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- C07F15/00—Compounds containing elements of Groups 8, 9, 10 or 18 of the Periodic Table
- C07F15/0006—Compounds containing elements of Groups 8, 9, 10 or 18 of the Periodic Table compounds of the platinum group
- C07F15/0033—Iridium compounds
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- C09K11/00—Luminescent, e.g. electroluminescent, chemiluminescent materials
- C09K11/06—Luminescent, e.g. electroluminescent, chemiluminescent materials containing organic luminescent materials
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- H10K85/00—Organic materials used in the body or electrodes of devices covered by this subclass
- H10K85/30—Coordination compounds
- H10K85/341—Transition metal complexes, e.g. Ru(II)polypyridine complexes
- H10K85/342—Transition metal complexes, e.g. Ru(II)polypyridine complexes comprising iridium
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- H—ELECTRICITY
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- H10K—ORGANIC ELECTRIC SOLID-STATE DEVICES
- H10K85/00—Organic materials used in the body or electrodes of devices covered by this subclass
- H10K85/60—Organic compounds having low molecular weight
- H10K85/649—Aromatic compounds comprising a hetero atom
- H10K85/654—Aromatic compounds comprising a hetero atom comprising only nitrogen as heteroatom
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- H10K—ORGANIC ELECTRIC SOLID-STATE DEVICES
- H10K85/00—Organic materials used in the body or electrodes of devices covered by this subclass
- H10K85/60—Organic compounds having low molecular weight
- H10K85/649—Aromatic compounds comprising a hetero atom
- H10K85/657—Polycyclic condensed heteroaromatic hydrocarbons
- H10K85/6572—Polycyclic condensed heteroaromatic hydrocarbons comprising only nitrogen in the heteroaromatic polycondensed ring system, e.g. phenanthroline or carbazole
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- C09K2211/00—Chemical nature of organic luminescent or tenebrescent compounds
- C09K2211/10—Non-macromolecular compounds
- C09K2211/1018—Heterocyclic compounds
- C09K2211/1025—Heterocyclic compounds characterised by ligands
- C09K2211/1029—Heterocyclic compounds characterised by ligands containing one nitrogen atom as the heteroatom
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- C09K2211/00—Chemical nature of organic luminescent or tenebrescent compounds
- C09K2211/10—Non-macromolecular compounds
- C09K2211/1018—Heterocyclic compounds
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- C09K2211/1059—Heterocyclic compounds characterised by ligands containing three nitrogen atoms as heteroatoms
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- C09K2211/00—Chemical nature of organic luminescent or tenebrescent compounds
- C09K2211/10—Non-macromolecular compounds
- C09K2211/1018—Heterocyclic compounds
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- C09K2211/1096—Heterocyclic compounds characterised by ligands containing other heteroatoms
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- C09K2211/00—Chemical nature of organic luminescent or tenebrescent compounds
- C09K2211/18—Metal complexes
- C09K2211/185—Metal complexes of the platinum group, i.e. Os, Ir, Pt, Ru, Rh or Pd
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- H10K2101/00—Properties of the organic materials covered by group H10K85/00
- H10K2101/10—Triplet emission
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- H10K—ORGANIC ELECTRIC SOLID-STATE DEVICES
- H10K50/00—Organic light-emitting devices
- H10K50/10—OLEDs or polymer light-emitting diodes [PLED]
- H10K50/11—OLEDs or polymer light-emitting diodes [PLED] characterised by the electroluminescent [EL] layers
Definitions
- the present invention relates generally to an iridium complex, and, more specifically, to an organic electroluminescence (hereafter referred to as organic EL) device using the iridium complex.
- organic EL organic electroluminescence
- An organic EL device is a light-emitting diode (LED) in which the light emitting layer is a film made from organic compounds, which emits light in response to an electric current.
- the light emitting layer containing the organic compound is sandwiched between two electrodes.
- the organic EL device is applied to flat panel displays due to its high illumination, low weight, ultra-thin profile, self-illumination without back light, low power consumption, wide viewing angle, high contrast, simple fabrication methods and rapid response time.
- organic EL device is composed of organic material layers sandwiched between two electrodes.
- the organic material layers include the hole transporting layer, the light emitting layer, and the electron transporting layer.
- the basic mechanism of organic EL involves the injection, transport, and recombination of carriers as well as exciton formation for emitting light.
- an external voltage is applied across the organic EL device, electrons and holes are injected from the cathode and the anode, respectively. Electrons will be injected from a cathode into a LUMO (lowest unoccupied molecular orbital) and holes will be injected from an anode into a HOMO (highest occupied molecular orbital).
- the electrons recombine with holes in the light emitting layer to form excitons and then emit light.
- the exciton may either be in a singlet state or a triplet state, depending on how the spins of the electrons and holes have been combined. 75% of the excitons is formed by recombination of electrons and holes to achieve the triplet excited state. Decay from triplet states is spin forbidden, thus, a fluorescence electroluminescent device has only 25% internal quantum efficiency.
- phosphorescent organic EL device make use of spin-orbit interactions to facilitate intersystem crossing between singlet and triplet states, thus obtaining emission from both singlet and triplet states and the internal quantum efficiency of electroluminescent devices from 25% to 100%.
- the spin-orbit interactions is achieved by certain heavy atoms, such as iridium, rhodium, platinum, and palladium, and the phosphorescent transition may be observed from an excited MLCT (metal to ligand charge transfer) state of organic metallic complexes.
- the phosphorescent organic EL device utilizes both triplet and singlet excitions.
- the phosphorescent organic EL device generally need an additional hole blocking layer (HBL) between the emitting layer (EML) and the electron transporting layer (ETL) or an electron blocking layer (EBL) between the emitting layer (EML) and the hole transporting layer (HTL).
- HBL hole blocking layer
- EML electron transporting layer
- EBL electron blocking layer
- the hole blocking materials or the electron blocking materials must have HOMO (highest occupied molecular orbital) and LUMO (lowest unoccupied molecular orbital) energy levels suitable to block hole or electron transport from the EML to the ETL or the HTL.
- HOMO highest occupied molecular orbital
- LUMO lowest unoccupied molecular orbital
- the conventional materials used for the phosphorescent guest in light emitting layer such as the metallic complexes, are still unsatisfactory in driving voltage, luminous efficiency and half-life time, and still have disadvantages for industrial practice use.
- the present invention has the objective of resolving the problems of prior arts and offering an organic EL device, which has high luminous efficiency and long half-life time.
- the present invention discloses a novel iridium complex, which is used as a phosphorescent dopant to lower driving voltage and power consumption and increase luminous efficiency and half-life time of organic EL devices.
- the iridium complex exhibits good thermal stability in the process for producing the organic EL device.
- the present invention has the economic advantages for industrial practice. Accordingly, the present invention discloses a iridium complex which can be used in organic EL devices.
- the mentioned iridium complex is represented by the following formula (1):
- X is an oxygen atom, a sulfur atom, a selenium atom, NR 3 , or CR 4 R 5 , Y 1 to Y 3 are each independently a nitrogen atom or CR 6 , and L represents formula (2):
- R 1 to R 9 are the same or different and each independently selected from the group consisting of a hydrogen atom, a substituted or unsubstituted alkyl group having 1 to 20 carbon atoms, a substituted or unsubstituted carbocyclic ring having 3 to 30 carbon atoms, a substituted or unsubstituted aryl group having 6 to 30 carbon atoms, a substituted or unsubstituted aralkyl group having 6 to 30 carbon atoms, and a substituted or unsubstituted heteroaryl group having 3 to 30 carbon atoms.
- the present invention further discloses an organic electroluminescence device.
- the organic electroluminescence device comprises a pair of electrodes composed of a cathode and an anode, and a light emitting layer between the pair of electrodes.
- the light emitting layer comprises the iridium complex of formula (1).
- the FIGURE is a schematic view showing an embodiment of the organic EL device of the present invention, wherein 6 is transparent electrode, 14 is metal electrode, 7 is hole injection layer which is deposited onto 6, 8 is hole transport layer which is deposited onto 7, 9 is electron blocking layer which is deposited onto 8, 10 is phosphorescent emitting layer which is deposited onto 9, 11 is hole blocking layer which is deposited onto 10, 12 is electron transport layer which is deposited onto 11, and 13 is electron injection layer which is deposited onto 12.
- an iridium complex which can be used as phosphorescent dopant material of light emitting layer for organic EL device is disclosed.
- the iridium complex is represented by the following formula (1):
- X is an oxygen atom, a sulfur atom, a selenium atom, NR 3 , or CR 4 R 5 , Y 1 to Y 3 are each independently a nitrogen atom or CR 6 , and L represents formula (2):
- R 1 to R 9 are the same or different and each independently selected from the group consisting of a hydrogen atom, a substituted or unsubstituted alkyl group having 1 to 20 carbon atoms, a substituted or unsubstituted carbocyclic ring having 3 to 30 carbon atoms, a substituted or unsubstituted aryl group having 6 to 30 carbon atoms, a substituted or unsubstituted aralkyl group having 6 to 30 carbon atoms, and a substituted or unsubstituted heteroaryl group having 3 to 30 carbon atoms.
- L is selected from the following groups:
- the iridium complex is one of the following complexes:
- an organic electroluminescence device in another embodiment, comprises a pair of electrodes composed of a cathode and an anode, and a light emitting layer between the pair of electrodes.
- the light emitting layer comprises the iridium complex of formula (1).
- the light emitting layer further includes a host material, and the iridium complex of formula (1) is used as a phosphorescent dopant material.
- the host material may be selected from the following compounds:
- the light emitting layer emits orange, yellow or red phosphorescence.
- the organic electroluminescent device is a lighting panel. In a further embodiment of the present invention, the organic electroluminescent device is a backlight panel.
- EXAMPLE 1 to 8 show the preparation of the iridium complex of the present invention
- EXAMPLE 9 shows the fabrication and the testing report of the organic EL device.
- PhMgBr (1 M in THF solution) (170 mL, 170.5 mmol) was slowly (0.3 mL/min) added to the mixture of Intermediate A (10 g, 48.7 mmol) and dry THF (300 mL) at 0° C. in 10 minutes. During this period, the internal temperature was closely monitored and controlled to remain below 3° C. Then the mixture was stirred at 0° C. for 5 minutes, followed by the slow and careful addition of saturated NH 4 Cl aqueous solution (30 mL). The internal temperature was controlled so that it remained below 5° C. Then 50 mL of water was added and the resulting mixture was extracted with ethylacetate (3 ⁇ 100 mL).
- ITO-coated glasses with 9 ⁇ 12 ohm/square in resistance and 120 ⁇ 160 nm in thickness are provided (hereinafter ITO substrate) and cleaned in a number of cleaning steps in an ultrasonic bath (e.g. detergent, deionized water). Before vapor deposition of the organic layers, cleaned ITO substrates are further treated by UV and ozone. All pre-treatment processes for ITO substrate are under clean room (class 100).
- an ultrasonic bath e.g. detergent, deionized water
- These organic layers are applied onto the ITO substrate in order by vapor deposition in a high-vacuum unit (10 ⁇ 7 Torr), such as: resistively heated quartz boats.
- a high-vacuum unit 10 ⁇ 7 Torr
- the thickness of the respective layer and the vapor deposition rate (0.1 ⁇ 0.3 nm/sec) are precisely monitored or set with the aid of a quartz-crystal monitor.
- individual layers can consist of more than one compound, i.e. in general a host material doped with a dopant material. This is successfully achieved by co-vaporization from two or more sources, which means the iridium complex of the present invention is thermally stable.
- Dipyrazino[2,3-f:2,3-]quinoxaline-2,3,6,7,10,11-hexacarbonitrile (HAT-CN) is used as hole injection layer in this organic EL device
- N,N-Bis(naphthalene-1-yl)-N,N-bis(phenyl)-benzidine NPB
- N-(biphenyl-4-yl)-9,9-dimethyl-N-(4′-phenyl-biphenyl-4-yl)-9H-fluoren-2-amine EB2
- the chemical structures thereof are shown below:
- the host material is selected from the following compounds:
- Organic iridium complexes are widely used as phosphorescent dopant for light emitting layer, and Ir(piq) 2 (acac) and Ir(2-phq) 2 (acac) are used as phosphorescent dopant of light emitting layer for comparison in the present invention.
- HB3 (see the following chemical structure) is used as hole blocking material (HBM), and 2-(10,10-dimethyl-10H-indeno[2,1-b]triphenylen-12-yl)-4,6-diphenyl-1,3,5-triazine (ET2) is used as electron transporting material to co-deposit with 8-hydroxyquinolato-lithium (LiQ) in organic EL device.
- HBM hole blocking material
- E2 2-(10,10-dimethyl-10H-indeno[2,1-b]triphenylen-12-yl)-4,6-diphenyl-1,3,5-triazine
- LiQ 8-hydroxyquinolato-lithium
- a typical organic EL device consists of low work function metals, such as Al, Mg, Ca, Li and K, as the cathode by thermal evaporation, and the low work function metals can help electrons injecting the electron transporting layer from cathode.
- the low work function metals can help electrons injecting the electron transporting layer from cathode.
- a thin-film electron injecting layer is introduced between the cathode and the electron transporting layer.
- Conventional materials of electron injecting layer are metal halide or metal oxide with low work function, such as: LiF, LiQ, MgO, or Li 2 O.
- EL spectra and CIE coordination are measured by using a PR650 spectra scan spectrometer.
- the current/voltage, luminescence/voltage and yield/voltage characteristics are taken with a Keithley 2400 programmable voltage-current source.
- the above-mentioned apparatuses are operated at room temperature (about 25° C.) and under atmospheric pressure.
- phosphorescent emitting organic EL device having the following device structure was produced (See the FIGURE).
- the I-V-B (at 1000 nits) and half-life time testing reports of phosphorescent emitting organic EL devices are shown in Table 1.
- the half-life time is defined as the time the initial luminance of 1000 cd/m 2 has dropped to half.
- the organic EL device of the present invention uses the iridium complex of formula (1) as light emitting dopant material to collocate with emitting host material H1 to H3, showing lower power consumption, longer half-life time and higher luminous efficiency.
- the present invention discloses an iridium complex, which can be used as the phosphorescent dopant material of light emitting layer in organic EL devices.
- the mentioned iridium complex is represented by the following formula (1):
- X is an oxygen atom, a sulfur atom, a selenium atom, NR 3 , or CR 4 R 5 , Y 1 to Y 3 are each independently a nitrogen atom or CR 6 , and L represents formula (2):
- R 1 to R 9 are the same or different and each independently selected from the group consisting of a hydrogen atom, a substituted or unsubstituted alkyl group having 1 to 20 carbon atoms, a substituted or unsubstituted carbocyclic ring having 3 to 30 carbon atoms, a substituted or unsubstituted aryl group having 6 to 30 carbon atoms, a substituted or unsubstituted aralkyl group having 6 to 30 carbon atoms, and a substituted or unsubstituted heteroaryl group having 3 to 30 carbon atoms.
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Abstract
Description
wherein R1 to R9 are the same or different and each independently selected from the group consisting of a hydrogen atom, a substituted or unsubstituted alkyl group having 1 to 20 carbon atoms, a substituted or unsubstituted carbocyclic ring having 3 to 30 carbon atoms, a substituted or unsubstituted aryl group having 6 to 30 carbon atoms, a substituted or unsubstituted aralkyl group having 6 to 30 carbon atoms, and a substituted or unsubstituted heteroaryl group having 3 to 30 carbon atoms.
wherein X is an oxygen atom, a sulfur atom, a selenium atom, NR3, or CR4R5, Y1 to Y3 are each independently a nitrogen atom or CR6, and L represents formula (2):
wherein R1 to R9 are the same or different and each independently selected from the group consisting of a hydrogen atom, a substituted or unsubstituted alkyl group having 1 to 20 carbon atoms, a substituted or unsubstituted carbocyclic ring having 3 to 30 carbon atoms, a substituted or unsubstituted aryl group having 6 to 30 carbon atoms, a substituted or unsubstituted aralkyl group having 6 to 30 carbon atoms, and a substituted or unsubstituted heteroaryl group having 3 to 30 carbon atoms.
| TABLE 1 | |||||
| Voltage | Efficiency | Half-life | |||
| Host | Dopant | (V) | (cd/A) | Color | time (hour) |
| H2 + H3 | EX1 | 3.9 | 22 | Red | 850 |
| H2 + H3 | EX5 | 3.7 | 23 | Red | 950 |
| H2 + H3 | EX27 | 4.2 | 19 | Red | 750 |
| H2 + H3 | Ir(2-phq)2(acac) | 4.5 | 18 | Red | 430 |
| H1 + H3 | EX2 | 4.1 | 17 | Red | 710 |
| H1 + H3 | EX6 | 3.9 | 19 | Red | 800 |
| H1 + H3 | EX30 | 4.0 | 18 | Red | 750 |
| H1 + H3 | EX40 | 4.4 | 16 | Red | 630 |
| H1 + H3 | EX42 | 4.6 | 14 | Red | 600 |
| H1 + H3 | Ir(piq)2(acac) | 4.8 | 15 | Red | 310 |
wherein X is an oxygen atom, a sulfur atom, a selenium atom, NR3, or CR4R5, Y1 to Y3 are each independently a nitrogen atom or CR6, and L represents formula (2):
wherein R1 to R9 are the same or different and each independently selected from the group consisting of a hydrogen atom, a substituted or unsubstituted alkyl group having 1 to 20 carbon atoms, a substituted or unsubstituted carbocyclic ring having 3 to 30 carbon atoms, a substituted or unsubstituted aryl group having 6 to 30 carbon atoms, a substituted or unsubstituted aralkyl group having 6 to 30 carbon atoms, and a substituted or unsubstituted heteroaryl group having 3 to 30 carbon atoms.
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| KR102851582B1 (en) | 2019-01-17 | 2025-08-28 | 삼성디스플레이 주식회사 | Near infrared light-emitting diode and device comprising the same |
| KR102862788B1 (en) * | 2019-12-06 | 2025-09-22 | 엘지디스플레이 주식회사 | White Organic Light Emitting Element and Display Device Using the Same |
| CN111704621B (en) * | 2020-06-24 | 2021-11-30 | 武汉天马微电子有限公司 | Compound, display panel and display device |
| CN116601157A (en) * | 2020-11-10 | 2023-08-15 | 默克专利有限公司 | Sulfur-containing compounds for organic electroluminescent devices |
| CN117088918A (en) * | 2023-09-20 | 2023-11-21 | 季华恒烨(佛山)电子材料有限公司 | Phosphorescent iridium complexes, luminescent layers, organic electroluminescent devices and electronic equipment |
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| US20160111660A1 (en) | 2014-10-17 | 2016-04-21 | Lg Display Co., Ltd. | Delayed fluorescence compound, and organic light emitting diode and display device using the same |
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| US20180277765A1 (en) * | 2017-03-26 | 2018-09-27 | Luminescence Technology Corporation | Delayed fluorescence material for organic electroluminescence device |
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| US6687266B1 (en) * | 2002-11-08 | 2004-02-03 | Universal Display Corporation | Organic light emitting materials and devices |
| JP5186736B2 (en) * | 2006-07-04 | 2013-04-24 | コニカミノルタホールディングス株式会社 | ORGANIC ELECTROLUMINESCENT ELEMENT MATERIAL, ORGANIC ELECTROLUMINESCENT ELEMENT, DISPLAY DEVICE AND LIGHTING DEVICE |
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| CN104788499B (en) * | 2015-05-06 | 2018-04-13 | 北京印刷学院 | Two fluorenes trifluoromethyl pyridine complex of iridium of spiral shell and its preparation method and application |
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| US20020034656A1 (en) * | 1998-09-14 | 2002-03-21 | Thompson Mark E. | Organometallic complexes as phosphorescent emitters in organic LEDs |
| US20160111660A1 (en) | 2014-10-17 | 2016-04-21 | Lg Display Co., Ltd. | Delayed fluorescence compound, and organic light emitting diode and display device using the same |
| US20160233442A1 (en) | 2015-02-11 | 2016-08-11 | Luminescence Technology Corporation | Iridium complexes and organic electroluminescence device using the same |
| US20180277765A1 (en) * | 2017-03-26 | 2018-09-27 | Luminescence Technology Corporation | Delayed fluorescence material for organic electroluminescence device |
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